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Remediation of AMD. The Green Precipitate ProcessBy R. M. Taylor
Lime addition to acid mine drainage (AMD) leads to precipitation, predominantly of metal hydroxides and calcium sulfate, and is the benchmark for remediation by precipitation. Geo2 Limited of Melbourn
Jan 1, 1998
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Ten Years Of Catalyst Recycling; A Step To The FutureBy Andrew Case
The Port Nickel facility in Braithwaite, Louisiana, is known for pioneering hydrometallurgical processes for the 'separation and recovery of nickel, cobalt and copper. Ten years ago, in 1985, a n
Jan 1, 1995
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Electrokinetic Treatment Of Contaminated Soils: Removal Of Lead From Porous KaoliniteBy I-Min Lu
An electric field was applied to a metal-bearing kaolinite specimen to investigate the efficiency of electro-osmosis in removing heavy metals from contaminated soils. The electric field induces a flow
Jan 1, 1996
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Cerro Verde Hydrometallurgical Plant Design Features and OperationBy O. Durand
The Cerro Verde Hydrometallurgical Plant, located at Arequipa in the southern part of Peru, started its operation in 1977 with a design capacity of 33,000 MT/year of copper cathodes. The plant has tr
Jan 1, 1987
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Thermodynamics And Kinetics Of Cyclones Melting Of Metal SulphidesBy I. Barin
The thermodynamics of cyclone smelting of sulphidic copper ores is described using as example the production of copper matte with 75 wt % Cu. Equilibrium calcualtions and material and energy balances
Jan 1, 1983
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Electrokinetic Treatment of Contaminated Soils: Removal of Lead from Porous KaoliniteBy Thomas W. Chapman, Shi-Chern Yen, I-Min Lu
"An electric field was applied to a metal-bearing kaolinite specimen to investigate the efficiency of electro-osmosis in removing heavy metals from contaminated soils. The electric field induces a flo
Jan 1, 1996
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Metal Silicides for High-Temperature Thermoelectric ApplicationBy Ramana G. Reddy, M. R. Bogala
Transition metal silicides have good potential for converting waste heat into electrical energy at higher temperatures. Transition metal silicides are used as thermoelectric alloys at higher temperatu
Mar 1, 2017
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Applications of Process Engineering Principles in Materials Processing, Energy and Environmental Technologies—Contributions of Professor Ramana ReddyBy Shijie Wang
Lifetime achievements of Professor Reddy ’s teaching, research and scholarship in the field of chemical and materials science and engineering are briefly described. He has devoted his entire career in t
Mar 1, 2017
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Recovery of Copper and Cobalt From Industrial Slag By Top-submerged Injection of Gaseous ReductantsBy Xun An
Slag from an electric slag cleaning furnace was injected with methane and air mixtures to facilitate the recovery of copper and cobalt. The effects of methane-to-air ratio, gas flow rate and temperatu
Jan 1, 1998
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The Design of Counter Current Metallurgical ReactorsBy A. Treverrow, G. A. Brooks, H. K. Worner
"The work by H.K Worner and co-workers at CRA in the 1960s, and early 1970s, established that molten metals could be refined continuously utilising counter current flow of metal and slag. Womer also d
Jan 1, 1996
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Mass Transfer Model for Laser Chemical Vapor Deposition of TitaniumBy A. Kar
A mathematical model is presented for pure titaqium deposition from titanium tetrabromide on a stainless-steel (SS 304) substrate. Five three-dimensional, transient, and nonlinear partial differential
Jan 1, 1992
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Modelling and Appraisal of Tandem Wire Submerged Arc Welding for the Weldability of 25 mm Thick Low Carbon Steel Plate in Two PassesBy N. S. Raghavendran
Based on the weld pool length and width calculations due to an empirical model (1) for submerged arc weld metal, an elegant quantitative definition of tandem submerged arc welding is established. On t
Jan 1, 1990
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Partitioning of Chalcopyrite by SulfidationBy M. J. Adam
The Bureau of Mines is investigating the feasibility of partitioning complex sulfide minerals to simpler sulfide phases by sulfidation reactions. Such partitioning can afford opportunity to improve se
Jan 1, 1987
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Fundamental Investigation Of Basic Mechanisms Of Carbon Dissolution In Molten Iron (Invited)Based on experimental and computer simulation results from our group, we report a systematic, atomic level analysis of carbon dissolution from carbonaceous materials in molten iron. Experimental resul
Jan 1, 2003
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Chlorination: A Potential Approach for the Beneficiction of ChromiteBy N. Kanari
One of the criteria to define the market value of chromite concentrate is its chromium to iron ratio. Changing this ratio for a definite chromite mineral is impossible by physical processing. This stu
Jan 1, 1997
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Water: An Increasingly Valuable and Challenging Resource for the Mining and Metallurgical Industry to Manage EffectivelyBy Ram V. Ramachandran
As an industry with major potential impacts (both good and bad) on water resources and due to the rising costs of process water, the mining and metallurgical processing industry has a key responsibili
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Manganese-Chloride Interactions on Pb–Ag Anode Behaviour in Synthetic Sulfuric Acid ElectrolytesBy E. Charles Abbey
Manganese in electrolyte has both beneficial and detrimental effects in Zn electrowinning. Mn oxidizes to form MnO2 on Pb–Ag anodes, cell walls and pipes. MnO2 reduces anode corrosion but also leads t
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Future Technological Developments for Aluminium SmeltingBy Barry Welch, Kai Grjotheim
"The capital intensive nature of the present process for aluminium smelting, the low productivity per unit reactor, and pressure to reduce the electdcal energy demand have motivated the search for an
Jan 1, 1988
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The Effect Of Collector/Metal Ion Ratio And Solution And Froth Height On The Removal Of Toxic Metals By Ion- And Precipitate-FlotationBy Kandipati Sreenivasarao
Ion and precipitate flotation involve adding an appropriate collector to aqueous solutions containing metal ions, to form hydrophobic metal-collector complexes or precipitates that can be removed by f
Jan 1, 1994
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Estimation of Viscosities of Multi-Component Melts at High TemperaturesBy S. Seetharaman
A mathematical model has been developed to evaluate the viscosities of melts at high temperatures. The viscous flow in liquid is described by the equation, {n = Aexp(AG*/RT)} based on the absolute rea
Jan 1, 1994